Journal of Integrative Agriculture
|
2026, 25(9): 3572-3584
• Crop Science •
Genome-wide characterization of soybean lysophosphatidic acid acyltransferases and functional characterization of the role of GmLPAT11 in salt stress
Full
Zhiyang Wang*, Peiyan Liu*, Haitong Sun, Wenying Suo, Ziqian Cheng, Mingliang Yang#, Qingshan Chen#, Ying Zhao#
Affiliations
National Key Laboratory of Smart Farm Technology and Systems/Key Laboratory of Soybean Biology, Ministry of Education/Northeast Agricultural University, Harbin 150030, China
About Author:
Zhiyang Wang, E-mail: wzy13613642168@163.com; Peiyan Liu, E-mail: liupeiyan823@163.com; #Correspondence Mingliang Yang, Tel: +86-451-55191945, E-mail: mlyang@neau.edu.cn; Qingshan Chen, Tel: +86-451-55191259, E-mail: qshchen@126.com; Ying Zhao, E-mail: tianshi198937@126.com
; * These authors contributed equally to this study.
doi: 10.1016/j.jia.2024.12.031
Outline
Lysophosphatidic acid acyltransferase (LPAT) enzymes are widely expressed in various plant species, and they contribute to growth, development, and stress responses. Currently, information regarding the LPAT gene family in soybeans is limited. In this study, genome-wide analyses identified 15 soybean LPATs, which were then evaluated for their conserved protein motifs. These genes were grouped into three clusters based on their phylogenetic relationships. Confocal microscopy was used to visualize the localization of six GmLPATs within Arabidopsis mesophyll protoplasts. cis-Acting regulatory element analyses and qRT-PCR experiments revealed that these GmLPATs were upregulated in response to hormonal stimulation or exposure to abiotic stressors, including drought, alkaline conditions, and salt stress. The expression patterns of these GmLPATs varied among different soybean tissue types. One member of the solLPAT1 subtype (GmLPAT11) was found to be upregulated in response to a range of treatments, highlighting its role in soybean salt stress responses. GmLPAT11 expression in Escherichia coli confirmed the LPAT activity of this recombinant enzyme, and overexpressing this LPAT reduced reactive oxygen species production in transgenic soybean plants, thereby enhancing their salt stress tolerance. Gene association analyses indicated that GmLPAT11 variants are closely associated with seedling salt tolerance, and a polymorphism in the GmLPAT11 CDS region was potentially associated with salt tolerance. These results provide new insights into the nature of the LPAT gene family in soybeans while also identifying promising candidate genes for future research efforts to enhance the overall salt tolerance of soybean crops.
soybean (Glycine max (L.) Merr.)
/
Lysophosphatidic acid acyltransferase
/
salt stress
/
expression pattern
Zhiyang Wang, Peiyan Liu, Haitong Sun, Wenying Suo, Ziqian Cheng, Mingliang Yang, Qingshan Chen, Ying Zhao.
Genome-wide characterization of soybean lysophosphatidic acid acyltransferases and functional characterization of the role of GmLPAT11 in salt stress[J].
Journal of Integrative Agriculture,
2026
, 25
(9)
: 3572
-3584
.
DOI: 10.1016/j.jia.2024.12.031
Year 2026 volume 25 Issue 9
PDF
42
9
Cite this Article
BibTeX
Article Info
doi: 10.1016/j.jia.2024.12.031